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Stability Analysis for the Grid-Connected Single-Phase Asymmetrical Cascaded Multilevel Inverter With SRF-PI Current Control Under Weak Grid Conditions

机译:弱电网条件下带有SRF-PI电流控制的并网单相非对称级联多电平逆变器的稳定性分析

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This paper analyzes the influence of phase-locked loop (PLL) on the stability of LCL-type single-phase grid-connected asymmetrical cascaded H-bridge multilevel inverter (ACHMI) with synchronous reference frame proportional-integral (SRF-PI) grid current control under weak grid scenarios. The ACHMI system is composed of power stage circuit and control system, where the control system contains the dual-loop current control strategy established in the hybrid reference frame, the SRF-PLL, and the hybrid modulation method employed to synthesize the multilevel output voltage. The small-signal model of the whole ACHMI system is first established by using a simple step-by-step derivation method, and then, the small-signal analysis method is adopted to linearize the ACHMI, which is then utilized to derive the impedance model of the ACHMI system. Furthermore, an improved impedance stability criterion is derived, which is then employed to analyze the system stability. By using this criterion, the stability of the ACHMI can be evaluated with the variation of the bandwidth of PLL, the output power factor angle of the ACHMI, and the amplitude of the grid current reference signal under weak grid conditions. In this paper, a systematic design procedure for the optimal selection of the PI controller of the PLL is presented, which guarantees the steady-state performance and dynamic response of the ACHMI system. With this design method, the dual-loop current control and PLL can be taken into account simultaneously when analyzing the stability margin of the ACHMI. Finally, the simulation and experimental results from a down-scaled grid-connected ACHMI prototype system are provided to confirm the validity of theoretical analysis.
机译:本文分析了锁相环(PLL)对具有同步参考系比例积分(SRF-PI)电网电流的LCL型单相并网非对称级联H桥多电平逆变器(ACHMI)稳定性的影响弱电网情况下的控制。 ACHMI系统由功率级电路和控制系统组成,其中控制系统包含在混合参考系中建立的双环电流控制策略,SRF-PLL和用于合成多级输出电压的混合调制方法。首先使用简单的逐步推导方法建立整个ACHMI系统的小信号模型,然后采用小信号分析方法对ACHMI进行线性化,然后利用它来推导阻抗模型ACHMI系统。此外,推导了改进的阻抗稳定性标准,然后将其用于分析系统稳定性。通过使用此标准,可以在弱电网条件下通过PLL带宽,ACHMI的输出功率因数角和电网电流参考信号的幅度变化来评估ACHMI的稳定性。本文提出了一种用于PLL的PI控制器最佳选择的系统设计程序,该程序可确保ACHMI系统的稳态性能和动态响应。通过这种设计方法,在分析ACHMI的稳定性裕度时,可以同时考虑双环电流控制和PLL。最后,提供了缩小规模的并网ACHMI原型系统的仿真和实验结果,以证实理论分析的有效性。

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